Hu Zhouyi, Shao Yingjie, Ouyang Xing, Tong Yeyu, Zhao Jian, Tsang Hon Ki, Townsend Paul D, Chan Chun-Kit
Opt Express. 2019 Nov 11;27(23):33789-33798. doi: 10.1364/OE.27.033789.
We propose probabilistically shaped quadrature amplitude modulation (PS-QAM) formats to maximize the capacity in fiber transmission systems using orthogonal chirp-division multiplexing (OCDM). OCDM possesses the property of chirp spread spectrum (CSS), leading to improved resilience to system impairments. We further investigate the recently proposed robust channel estimator based on pulse compression and noise rejection and experimentally demonstrate its feasibility in an intensity-modulated/direction-detection (IM/DD) OCDM system. By applying the proposed PS-QAM based OCDM to an IM/DD optical system, a net information rate of 111.1 Gb/s has been successfully achieved using a 10-GHz class Mach-Zehnder modulator (MZM) and has also shown improved performance compared to the conventional PS-QAM based orthogonal frequency-division multiplexing (OFDM) systems. Moreover, due to the superior characteristics of OCDM, there is no need for additional feedback to obtain the prior knowledge of channel state information in the proposed system, leading to reduced complexity and cost.
我们提出概率整形正交幅度调制(PS-QAM)格式,以在使用正交啁啾分割复用(OCDM)的光纤传输系统中最大化容量。OCDM具有啁啾扩频(CSS)特性,从而提高了对系统损伤的恢复能力。我们进一步研究了最近提出的基于脉冲压缩和噪声抑制的稳健信道估计器,并通过实验证明了其在强度调制/直接检测(IM/DD)OCDM系统中的可行性。通过将所提出的基于PS-QAM的OCDM应用于IM/DD光系统,使用10GHz级马赫-曾德尔调制器(MZM)成功实现了111.1Gb/s的净信息速率,并且与传统的基于PS-QAM的正交频分复用(OFDM)系统相比,性能也有所提高。此外,由于OCDM的优越特性,在所提出的系统中无需额外反馈来获取信道状态信息的先验知识,从而降低了复杂度和成本。